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Efficient Post-Quantum Undeniable Signature on 64-Bit ARM

机译:高效后量子不可否认的64位手臂签名

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We present a full-fledged, highly-optimized, constant-time software for post-quantum supersingular isogeny-based undeniable signature (SIUS) on the ARMv8 platforms providing 83- and 110-bit quantum security levels. To the best of our knowledge, this work is the first empirical implementation of isogeny-based quantum-resistant undeniable signature presented to date. The proposed software is developed on the top of our optimized hand-written ARMv8 assembly arithmetic library and benchmarked on a variety of platforms. The entire protocol runs less than a second on Huawei Nexus smart phone, providing 83-bit quantum security level. Moreover, our signature and public key sizes are 25% smaller than the original SIUS scheme. We remark that the SIUS protocol, similar to other isogeny-based schemes, suffers from the excessive number of operations, affecting its overall performance. Nonetheless, its significantly smaller key and signature sizes make it a promising candidate for post-quantum cryptography.
机译:我们在ARMv8平台上为基于量子超出的基于核心的不可否认的签名(Sius)提供了全面的高度优化的恒定时间软件,提供了83-和110位量子安全水平。据我们所知,这项工作是迄今为止迄今为止提供基于基于Isogeny的量子抗性不可否认的签名的第一实证实施。所提出的软件是在我们优化的手写ARMv8装配算术库的顶端开发的,并在各种平台上进行基准测试。 Huawei Nexus智能手机上的整个协议少于一秒钟,提供83位量子安全级别。此外,我们的签名和公钥大小比原始Sius方案小25%。我们备注,类似于基于其他基于遗传学的方案的Sius协议遭受过多的操作,影响其整体性能。尽管如此,它的明显较小的关键和签名规模使其成为昆腾密码学的有希望的候选者。

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